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This document introduces the estimate and deliverables for the in-factory laser scanning service. It provides an overview of the scanning using HOVERMAP STX within the factory, the objectives and benefits of implementing laser scanning, visualization of the point cloud data acquired on-site, and a cloud link for viewing the point cloud data. The laser scanning service significantly improves the process efficiency of the factory, enabling reductions in time and costs. [Contents] ■ Overview and objectives of laser scanning implementation ■ Introduction of scan data ■ Presentation of deliverable images ■ Estimate details and future process *For more information, please download the PDF or feel free to contact us.
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This document is a report on the verification conducted to confirm the accuracy of reference surfaces when installing equipment such as machine tools and belt conveyors. Using Hovermap, the concrete floor surface was scanned, and mesh data and surface data (in CAD format) were generated from the point cloud data. This data is useful as foundational information for confirming accuracy and improving construction efficiency during future equipment installation and renovations. 【Contents】 ■ Purpose ■ Measurement and analysis procedures ■ Equipment used and reasons for selection ■ Results ■ Verification of the results against the site ■ Future applications *For more details, please download the PDF or feel free to contact us.
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Hovermap is a mobile SLAM laser scanner developed by Emesent, an Australian company. It simultaneously achieves high-precision self-localization and 3D mapping without displacement, even in complex environments where GPS signals are unavailable, such as mines, underground tunnels, factories, plants, and cultural heritage sites. Currently, it is implemented in over 60 countries worldwide and serves as a stable SLAM system capable of 3D measurement both above and below ground, as well as indoors and outdoors. 【Features】 ■ High-reliability SLAM algorithm ■ Maintains high precision even in spaces with continuous shapes ■ Strong against dark environments, metal reflections, and magnetic interference ■ Reproducibility of results ■ Completes 3D scanning of factories ranging from 3,000 to 5,000 m² in just about 1 hour ■ Real-time preview allows for immediate data verification on-site *For more details, please download the PDF or feel free to contact us.
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This document introduces the visualization of factories and productivity improvement using Hovermap. It goes beyond mere technology introduction and delves into how to utilize digital technology and connect its effects to the field. It organizes the current status and challenges of digital twins and also mentions the relationship with cyber-physical systems (CPS). [Contents (partial)] ■ The "next step" of digitalization → Utilization with purpose ■ Background of objectives and challenges ■ Current challenges in factories ■ Direction for solutions ■ Challenges of conventional approaches and our progress *For more details, please download the PDF or feel free to contact us.
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This document introduces the "Hovermap Measurement Service" that solves the "troubles" at the site. We enumerate the solutions provided by "Hovermap" for various site-related issues (Pain) by category. Based on the Wildcat SLAM technology, which has been researched and developed for many years, we provide one-stop support for safe and high-precision 3D data acquisition to BIM and DX utilization across various sites such as factories, construction, civil engineering, infrastructure, and cultural heritage. [Contents] ■Challenges at the site that Hovermap solves ■Changes brought by Hovermap ■Message copy (for HP visuals) *For more details, please download the PDF or feel free to contact us.
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This document summarizes the reasons why the mobile LiDAR measurement system "Hovermap" is chosen. It includes comparisons based on differences in measurement principles, positioning methods, operating environments, as well as differences in operational aspects, safety, data quality, and application scope. Through comparisons with general methods (fixed LiDAR, other mobile SLAM, photogrammetry, etc.), its advantages are clearly highlighted. 【Contents】 ■ Differences in measurement methods ■ Differences in operational aspects and safety ■ Differences in data quality and application scope ■ Comparison with other methods (such as photogrammetry) ■ Reasons for choosing Hovermap - Summary *For more details, please download the PDF or feel free to contact us.
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This document explains the ROI (Return on Investment) of the 3D measurement data provision service. It introduces the overall picture of ROI, including cost reduction effects, value-added and revenue expansion effects, and quantifiable indicators, as well as perspectives specific to the manufacturing industry and simulation examples. The 3D measurement data provision service is an "investment in profit creation" that enhances competitiveness not through direct sales increases, but through improvements in profit margins, cost reductions, and risk avoidance. [Contents] ■ Overview of ROI ■ Perspectives specific to the manufacturing industry ■ ROI simulation examples ■ Summary *For more details, please download the PDF or feel free to contact us.
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This document is a proposal for 3D spatial visualization and DX promotion for the manufacturing industry. We propose 3D scanning of factories and equipment (using SLAM or drones/handheld scanners) and a lightweight 3D viewer that can be operated in a web browser (compatible with smartphones and PCs). We also explain the significance of implementing these solutions for both new and existing factories. If you have any questions about this proposal or would like to request a demo, please feel free to contact us. [Contents (partial)] ■ Background and purpose of the proposal ■ Details of the proposal ■ Use cases and benefits of implementation ■ Offered packages and cost models (excluding tax, reference prices) ■ Monetization concepts and future developments *For more details, please download the PDF or feel free to contact us.
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This document explains the current state and future of "digital twins." It introduces various reactions from countries to OpenAI's video generation AI "Sora2," a retrospective on the history of information communication and data utilization over the past 100 years, and the reasons behind the realization of the VIRTUAL SHIZUOKA concept. Additionally, it discusses the construction of digital twins for small and medium-sized enterprises, as well as the business applications of game engines and VR. [Contents] ■ The development of VIRTUAL SHIZUOKA ■ The current state of digital twins ■ The future of digital twins *For more details, please download the PDF or feel free to contact us.
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This document systematically organizes the differences between industrial software (CAD/BIM/CAE) and game engines (Unity/Unreal/Omniverse, etc.). It compares their respective positions, standard compliance, performance, cost, and development processes. The aim is to clarify the optimal utilization methods in industrial fields (what to leave to industrial software and what to accelerate with game engines). [Contents] ■ Position of industrial software and game engines ■ Standards and performance ■ Performance and cost ■ Differences from the perspective of the development process ■ Summary ■ Comparison table of industrial software and game engines *For more details, please download the PDF or feel free to contact us.
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The Shizuoka Project Corporation exhibited at the "Robot, AI, IoT Fair in Shizuoka" held at Granship in August of the 7th year of Reiwa. This fair is an event aimed at introducing advanced technologies to local companies and residents interested in the introduction of robots, AI, and IoT. On that day, we presented a domestic digital twin solution for small and medium-sized enterprises that is "easy for anyone to handle" and "can be implemented at a low cost." 【Event Overview】 ■ Date: August 27, 2025 (Wednesday) 10:00 AM - 4:30 PM ■ Venue: Granship 6th Floor Exhibition Gallery 1 (2-3-1 Higashi Shizuoka, Suruga Ward, Shizuoka City) ■ Content: Actual displays of robots and AI/IOT-related equipment / Individual consultation booths, etc. ■ Participation Fee: Free *For more details, please download the PDF or feel free to contact us.
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This document includes a report on the results of laser scanning within the factory using Hovermap STX and examples of its application. We introduce the "technical features and reasons for the introduction of Hovermap STX," highlighting the use of SLAM technology, high-precision 3D mapping, shortened construction periods, and improved safety. Additionally, at the end of the document, we also cover the effects of introducing Hovermap STX, as well as the benefits of management and renovation. Please take a look. [Contents] ■ Overview of Hovermap STX and its application in factory scanning ■ Introduction of laser scanning results within the factory ■ Utilization of scan data and future prospects ■ Summary and future direction *For more details, please download the PDF or feel free to contact us.
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A digital twin refers to the technology that reproduces real objects or systems on a computer, utilizing them for analysis, prediction, and improvement. By analyzing operational and production data within a factory, it becomes possible to identify bottlenecks and enhance work efficiency, leading to increased productivity and cost reduction. ■ Benefits of Implementing Digital Twins 1. Remote understanding of on-site conditions You can check the operational status of machines and the condition of production lines in real-time from remote locations, making discussions more efficient. 2. Safe information management Digital twins display only essential information and can mask confidential parts, thereby enhancing safety. 3. Flexible and intuitive information display Unlike flat dashboards, you can freely change perspectives and overlay information, allowing for an intuitive grasp of on-site conditions. 4. Contributing to securing young talent It becomes easier to dispel the image of "3K (hard, dirty, dangerous)" and promote the workplace as a comfortable and advanced environment. \ For more details, please view the PDF data by downloading the catalog / We also welcome inquiries regarding digital twins and data measurement, so feel free to contact us.
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Hovermap is an unmanned aerial vehicle that can be used for recording the current state of factory facilities, design support during equipment updates, and maintenance management. By non-contact scanning of high places and hazardous areas with a drone, it is possible to ensure both worker safety and surveying efficiency. It enables "immediate scanning and immediate aerial photography" for initial response at disaster and accident sites, excelling in insurance and investigation capabilities. 【Features】 - High-precision scanning of locations that are difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals do not reach. - Generation of high-precision and high-quality 3D models through the combination of photogrammetry. - A composite technology of aerial photography and scanning that allows for a three-dimensional understanding of structures and digital archiving. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle that can be used for structural scanning, recording before and after seismic reinforcement design, and supporting the introduction of BIM. It is capable of scanning high places, undersides, indoors, and underground, making it applicable to a wide range of industries and sites. Additionally, it supports the creation of evidence materials that can be submitted to government agencies, insurance companies, etc., for deterioration diagnosis and pre- and post-construction records. 【Features】 ■ High-precision scanning of areas that were difficult to scan with conventional methods, such as indoors, underground, and the undersides of structures where GPS signals are unavailable. ■ Generation of high-precision and high-quality 3D models through the combined use of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technology. *For more details, please download the PDF or contact us.
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Hovermap is an unmanned aerial vehicle that can be used for visualizing the current state of tenant buildings, hospitals, schools, and public facilities, supporting planning during equipment updates, and creating 3D representations of facility assets. It assists in creating evidence materials that can be submitted to government agencies, insurance companies, etc., such as deterioration diagnosis and pre- and post-construction records. Additionally, 3D data can be utilized throughout the entire lifecycle of the facility, contributing to long-term maintenance and asset management. 【Features】 - High-precision scanning of areas that are difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals are unavailable. - Generation of high-precision and high-quality 3D models through the combined use of photogrammetry. - Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technologies. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle that can be used for aerial photography and 3D recording of disaster sites such as typhoons, earthquakes, and fires, as well as for creating damage reports with evidence images. It enables "immediate scanning and immediate aerial photography" for initial response at disaster and accident sites, demonstrating excellent capabilities for insurance and investigation. Additionally, its track record of providing aerial photography for NHK information programs and historical dramas enhances its reliability with media and government agencies. 【Features】 ■ High-precision scanning of locations that are difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals are unavailable. ■ Generation of high-precision and high-quality 3D models through the combination of photogrammetry. ■ A composite technology of aerial photography and scanning that allows for a three-dimensional understanding of structures and digital archiving. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle that can be used for capturing background materials for virtual production, aerial photography, and generating CG of structures. Our company possesses the technical capability to operate drone aerial photography, Hovermap scanning, and photogrammetry as an integrated service. Additionally, our track record of providing aerial photography for NHK information programs and historical dramas has established a high level of trust with media and government agencies. 【Features】 ■ High-precision scanning of locations that are difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals are unavailable. ■ Generation of high-precision and high-quality 3D models through the combined use of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through the combined technology of aerial photography and scanning. *For more details, please download the PDF or contact us.
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The SEEDS PROJECT has accumulated unique technical know-how in the selection, operation maintenance, and tuning of drone aircraft and filming equipment based on years of experience in unmanned aerial vehicle operations, and has put this into practice at numerous filming sites. By detecting changes in various filming environments such as location and weather, we operate drone aircraft and filming equipment to promise our customers reliable "trust" and "safety," while providing value through operational techniques that demonstrate "excellent launch capability and mobility." Our operational aircraft can be equipped with a variety of high-quality cameras, including 8K, 4K, and 2K cameras. **Our Strengths** - Providing services to customers with assurance and trust - Detecting changes in various filming environments such as location and weather - Operating drone aircraft and filming equipment based on multi-faceted perspectives and judgments - Operational techniques that demonstrate "excellent launch capability and mobility" - Our operational aircraft can be equipped with a variety of high-quality cameras, including 8K, 4K, and 2K cameras *For more details, please refer to the PDF materials or feel free to contact us.*
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We would like to introduce our efforts in building a digital twin for small and medium-sized enterprises (SMEs) using the game engine "Unreal Engine." Building a digital twin incurs enormous costs and faces challenges such as a shortage of specialized personnel, lack of information, few examples at a small scale, a lack of groundwork for digitalization, and a long road ahead that includes IoT. In our SME digital twin initiative, we aim to reduce IoT implementation costs by one-third, develop without the need for specialized knowledge, publicly share information and case studies, and provide comprehensive support from IoT implementation to digital twin construction. In our model case, we provided supportive collaboration with the model company, passed on construction techniques, and achieved qualitative effects in raising awareness of digital transformation (DX) across the entire model company, including employees. [Challenges of the Model Company] ■ Reduced digital twin (IoT implementation) costs by one-third (300,000 yen/year) ■ Development without the need for specialized knowledge, with information and case studies publicly available (development period of 2 months) ■ Comprehensive support from IoT implementation to digital twin construction *For more details, please feel free to contact us.
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We will introduce the effects and expectations of utilizing digital twins in factories. By leveraging digital twins, it has become possible to discuss while checking the real-time conditions of distant sites. While there is a risk of confidential information being captured by surveillance cameras, utilizing digital twins allows for specific information to be masked, enabling safe information management. Compared to traditional flat dashboards, it allows for a more flexible display of information. With this implementation, it is expected to dispel the "3K (Kitsui, Kitanai, Kiken)" image associated with the press industry and contribute to securing younger talent. We aim to further improve operations and enhance productivity by continuing to advance the use of digital twins. [Overview] ■ Efficiency in discussions with remote locations ■ Enhanced security measures ■ Advanced data visualization and analysis ■ Improved industry image and talent acquisition *For more details, please feel free to contact us.
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Our company has participated in numerous projects, including the development and evaluation pilots of our flagship model "R-MAX" at a certain company, proposing "operator control and fatigue reduction," which led to the start of development and received high praise from owners. Additionally, through joint development with NHK, we developed a "4-axis active electronic control camera gimbal." This was mounted on unmanned helicopters and played an active role in domestic and international location shoots for NHK program production. Furthermore, we have achievements such as collaborating on the development of a high-definition TV live broadcasting method using unmanned aircraft and the development and launch of an 8K aerial photography system using unmanned helicopters. For more details, please refer to the related links below. 【Development Project Achievements】 ■ Participated in numerous projects, including the development and evaluation pilots of our flagship model "R-MAX" ■ Developed a "4-axis active electronic control camera gimbal" ■ Collaborated on the development of a high-definition TV live broadcasting method using unmanned aircraft ■ Developed and launched an 8K aerial photography system using unmanned helicopters *For more information, please refer to the related links or feel free to contact us.
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We would like to introduce the 'Hovermap STX' that we handle. It provides suitable measurements for various platforms such as UGVs, dog-type robots, shaft gauges, drones, vehicles, and backpacks. It enables seamless 3D scanning both indoors and outdoors. Even complex and intricate shapes can be scanned thoroughly by circling around the target, completing a detailed 3D scan in about one minute. Large facilities and wide areas can be fully 3D scanned down to fine details in just two hours. 【Features】 ■ SLAM LIDAR mapping ■ Flight in non-GPS environments ■ Collision avoidance ■ Advanced autonomous control ■ Long-range Lidar measurement range of 300m *For more details, please download the PDF or feel free to contact us.
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Our company offers an "8K Aerial Photography Service" using our uniquely developed low-vibration unmanned helicopter. We possess an 8K camera, a gimbal, and an unmanned aerial vehicle, and through repeated test flights and adjustments, we provide a stable, smooth service without any shake that meets our customers' needs. Please feel free to contact us if you have any requests. 【Our Strengths】 ■ Core technology and know-how (expertise based on operational techniques and achievements under various flight conditions) ■ Advanced equipment (deep knowledge of unmanned aerial vehicles and filming equipment) ■ Extensive experience in filming collaborations *For more details, please download the PDF or contact us.
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We offer a "UAV Laser Surveying Service" that allows for easy acquisition of terrain and cross-sectional data beneath trees without the need to fell them. From fieldwork for measurements to data processing tasks, we can provide a one-stop service tailored to our customers' needs. Additionally, we also accept requests for data processing only, to extract the necessary data for report creation. Please feel free to contact us if you have any requests. 【Features】 ■ Suitable for inaccessible areas and hazardous locations where scaffolding cannot be set up ■ Generates dense point clouds through low-altitude measurements ■ Efficiently and accurately reproduces micro-topography ■ Real-time mapping on-site using a PC *For more details, please download the PDF or contact us.
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Our company offers the unmanned aerial vehicle 'Hovermap,' which enables self-position estimation in areas where GPS signals are unavailable, as well as during nighttime or in darkness. With spatial recognition and collision avoidance sensors, it can autonomously navigate without collisions. When mounted on a drone, it can fly very close to structures and in confined indoor and outdoor spaces, allowing for extremely stable flight. This capability enables 3D scanning of terrain and shapes without being affected by the surrounding environment, such as obstacles or intricate areas. Please feel free to contact us if you have any inquiries. 【Features】 ■ Simultaneous self-position estimation and environmental mapping ■ Flight control and autonomous navigation possible even in non-GNSS environments ■ 3D spatial recognition and real-time monitoring *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle capable of diagnosing the deterioration of bridges, tunnels, and water supply and drainage systems, as well as improving the efficiency of regular inspections. It supports the creation of evidence materials that can be submitted to government agencies and insurance companies, such as deterioration diagnosis and pre- and post-construction records. Additionally, due to its track record of providing aerial footage for NHK information programs and historical dramas, it has high reliability with media and government agencies. 【Features】 ■ High-precision scanning of areas that are difficult to scan with conventional methods, such as indoors, underground, and the backs of structures, where GPS signals do not reach. ■ Generation of high-precision and high-quality 3D models through the combined use of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technology. *For more details, please download the PDF or contact us.
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Using the unmanned aerial vehicle 'Hovermap', it is possible to conduct 3D measurements, design, and maintenance support for large-scale, high-altitude, and complex structures such as shipyards, port facilities, tanks, and transmission towers. Scanning in high places, on the underside, indoors, and underground is also possible, making it applicable to a wide range of industries and sites. Additionally, by performing non-contact scans of high places and hazardous areas with drones, it is possible to ensure both the safety of workers and the efficiency of surveying. 【Features】 ■ High-precision scanning of locations where conventional scanning has been difficult, such as indoors, underground, and the undersides of structures where GPS signals do not reach. ■ Generation of high-precision and high-quality 3D models through the combined use of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technologies. *For more details, please download the PDF or contact us.
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Using the unmanned aerial vehicle 'Hovermap', it is possible to obtain 3D data of the current state of redevelopment areas, conduct spatial simulations, and create visualization content for residents and government officials. With photorealistic 3D visualization using tools like Twinmotion, we can support consensus-building among stakeholders, residents, and government officials. Additionally, our track record of providing aerial footage for NHK information programs and historical dramas enhances our credibility with media and government agencies. 【Features】 - High-precision scanning of locations where GPS signals are unavailable, such as indoors, underground, and behind structures, which were difficult to scan conventionally. - Generation of high-precision and high-quality 3D models through the combination of photogrammetry. - A composite technology of aerial photography and scanning for a three-dimensional understanding of structures and digital archiving. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle that can be used for scanning and BIM modeling of complex piping structures in chemical, food, and pharmaceutical plants, as well as for maintenance planning and safety design purposes. 3D data can be utilized throughout the entire lifecycle of the facility, contributing to long-term maintenance and asset management. Additionally, it supports the creation of evidence materials that can be submitted to authorities and insurance companies, such as deterioration diagnosis and pre- and post-construction records. 【Features】 ■ High-precision scanning of locations that are difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals are unavailable. ■ Generation of high-precision and high-quality 3D models through the combination of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technology. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle that can be used for 3D recording of power plants, substations, relay stations, and pipelines, as well as for disaster response and regular inspections and analysis of aging infrastructure. 3D data can be utilized throughout the entire lifecycle of facilities, contributing to long-term maintenance and asset management. Additionally, it is capable of scanning high places, back sides, indoors, and underground, making it applicable across a wide range of industries and sites. [Features] - High-precision scanning of locations that were difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals are unavailable. - Generation of high-precision and high-quality 3D models through the combination of photogrammetry. - Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technologies. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle that can be used for scanning mining sites and tunnels, understanding faults and calculating volumes, and managing shapes through photogrammetry. It enables "immediate scanning and immediate aerial photography" for initial response during disasters and accidents, excelling in insurance and investigation capabilities. Additionally, it supports the creation of evidence materials that can be submitted to government agencies and insurance companies, such as deterioration diagnosis and pre- and post-construction records. 【Features】 ■ High-precision scanning of areas that are difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals are unavailable. ■ Generation of high-precision and high-quality 3D models through the combination of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technologies. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle capable of acquiring the current state of warehouses, stores, and aging facilities, as well as creating 3D drawings and facilitating administrative applications. It supports the creation of evidence materials that can be submitted to authorities and insurance companies, such as deterioration diagnosis and pre- and post-construction records. Additionally, 3D data can be utilized throughout the entire lifecycle of the facility, contributing to long-term maintenance and asset management. 【Features】 ■ High-precision scanning of locations that were difficult to scan with conventional methods, such as indoors, underground, and behind structures where GPS signals do not reach. ■ Generation of high-precision and high-quality 3D models through the combination of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technologies. *For more details, please download the PDF or contact us.
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"Hovermap" is an unmanned aerial vehicle capable of facility surveys, flow design, and obstacle mapping before the introduction of AGVs and AMRs. It can also scan high places, undersides, indoors, and underground, making it applicable across a wide range of industries and sites. Additionally, by non-contact scanning of high or hazardous areas with a drone, it is possible to ensure both the safety of workers and the efficiency of surveying. 【Features】 ■ High-precision scanning of locations that are difficult to scan with traditional methods, such as indoors, underground, and behind structures where GPS signals do not reach. ■ Generation of high-precision and high-quality 3D models through the combination of photogrammetry. ■ Three-dimensional structural understanding and digital archiving through a combination of aerial photography and scanning technologies. *For more details, please download the PDF or contact us.
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